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Design and Analysis of a Multi-Stage LTCC Transition for GaN Flip-Chip Interconnect to SMA Edge Launch in C-Band SiP

  • Maryam Sadeghi
  • , Dawood Shekari Beyragh
  • , Mohammad Helaoui
  • , Ammar B. Kouki
  • , Fadhel M. Ghannouchi
  • Department of Electrical & Software Engineering
  • University of Calgary

Research output: Contribution to Book/Report typesContribution to conference proceedingspeer-review

Abstract

This paper presents a multi-stage, low-loss transition for routing GaN flip-chip signals to an SMA edgelaunch connector, realized using Low Temperature Co-Fired Ceramic (LTCC) technology for System-in-Package (SiP) integration. Built on a five-layer LTCC substrate, the design manages a 389 μ m flip-chip pad pitch and utilizes varied tape thicknesses to optimize vertical routing and a constant 50 Ohm impedance. The three-section interconnect comprises a BGA-tomicrostrip (MS) connection, a vertical MS transition, and a MS-to-SMA interface. Although optimized for the C-band (5 to 6 GHz), the design achieves exceptional broadband performance. Simulation confirms an insertion loss of less than 0.4 dB across the entire DC to 10 GHz bandwidth. Within the target 5 to 6 GHz range, insertion loss is better than 0.25 dB and return loss is better than 20 dB. This LTCC solution offers an efficient, high-density, minimal-loss route for high-speed GaN signals.

Original languageEnglish
Title of host publication20th European Conference on Antennas and Propagation, EuCAP 2026
PublisherInstitute of Electrical and Electronics Engineers Inc.
ISBN (Electronic)9788831299121
DOIs
Publication statusPublished - 2026
Event20th European Conference on Antennas and Propagation, EuCAP 2026 - Dublin, Ireland
Duration: 19 Apr 202624 Apr 2026

Publication series

Name20th European Conference on Antennas and Propagation, EuCAP 2026

Conference

Conference20th European Conference on Antennas and Propagation, EuCAP 2026
Country/TerritoryIreland
CityDublin
Period19/04/2624/04/26

!!!Keywords

  • End-Launch SMA Connector
  • Flip-Chip
  • LTCC Test Interposer

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